PD Dr.-Ing. habil. Jörg Stiller
                
                    
    
        
            
                
                    
                          © Sven Ellger/TUD
                    
                
            
        
    
                
            
        
        
        
    
                                    
                                
                            Wissenschaftlicher Mitarbeiter
NamePD Dr.-Ing. habil. Jörg Stiller
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Professur für Strömungsmechanik
Professur für Strömungsmechanik
Besucheradresse:
Zeuner-Bau, ZEU 246 George-Bähr-Str. 3c
01069 Dresden
None
GPS: N 51° 01.754' E 013° 43.515'
Vorlesungen
Aerodynamik
Numerische Strömungsmechanik
Höhere Numerische Strömungsmechanik
Strömungssimulation auf Hochleistungsrechnern
Turbulente Strömungen
Projekte
Multilevel-Methoden hoher Ordnung in Zeit und Raum für die numerische Simulation inkompressibler Strömungen (anlaufend)
Ehemalige Projekte
Numerische Modellierung turbulenter MFD-Strömungen
DFG Sonderforschungsbereich 609, Teilprojekt A1
Numerik der elektromagnetischen Kontrolle von Körperumströmungen in elektrisch schwach leitfähigen Flüssigkeiten
DFG Sonderforschungsbereich 609, Teilprojekt C1
Turbulente Austauschprozesse zwischen Waldflächen und der Atmosphäre
DFG Schwerpunktprogramm SPP 1276 MetStroem, TurbEFA
Publikationen
2016
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                                    Fast static condensation for the Helmholtz equation in a spectral-element discretization, 2016, p. 371-380, 10 p.Electronic (full-text) versionResearch output: Contribution to conferences > Paper
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                                    Robust multigrid for high-order discontinuous Galerkin methods: A fast Poisson solver suitable for high-aspect ratio Cartesian grids, 2016, 20 p.Electronic (full-text) versionResearch output: Other contribution > Other
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                                    The Orchestration Stack: The Impossible Task of Designing Software for Unknown Future Post-CMOS Hardware, 2016, Proceedings of the 1st International Workshop on Post-Moore's Era Supercomputing (PMES). 3 p.Electronic (full-text) versionResearch output: Contribution to book/conference proceedings/anthology/report > Conference contribution
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                                    Using semantics-aware composition and weaving for multi-variant progressive parallelization, 2016, 12 p.Electronic (full-text) versionResearch output: Other contribution > Other
 
2015
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                                    A quantitative comparison of the capabilities of in situ computed tomography and conventional computed tomography for damage analysis of composites, 6 Apr 2015, In: Composites Science and Technology. 110, p. 62-68, 7 p.Electronic (full-text) versionResearch output: Contribution to journal > Research article
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                                    TurbEFA: An interdisciplinary effort to investigate the turbulent flow across a forest clearing, 13 Jan 2015, In: Meteorologische Zeitschrift. 23, 6, p. 637-659, 23 p.Electronic (full-text) versionResearch output: Contribution to journal > Research article
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                                    Nonuniformly weighted Schwarz smoothers for spectral element multigrid, 2015Electronic (full-text) versionResearch output: Preprint/documentation/report > Preprint
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                                    Two-level parallelization of a fluid mechanics algorithm exploiting hardware heterogeneity, 2015, In: Computers and Fluids. p. 114-124, 11 p.Electronic (full-text) versionResearch output: Contribution to journal > Research article
 
2014
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                                    Condensation of moist air in heat exchanger using CFD, 2014, 6 p.Research output: Other contribution > Other
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                                    Energy-minimizing curve fitting for high-order surface mesh generation, 2014, 10 p.Electronic (full-text) versionResearch output: Other contribution > Other